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Comparative proteomic analysis of salt response proteins in seedling roots of two wheat varieties
Authors:Guo Guangfang  Ge Pei  Ma Chaoying  Li Xiaohui  Lv Dongwen  Wang Shunli  Ma Wujun  Yan Yueming
Affiliation:
  • a Key Laboratory of Genetics and Biotechnology, College of Life Sciences, Capital Normal University, 100048 Beijing, China
  • b State Agriculture Biotechnology Centre, Murdoch University and Western Australian Department of Agriculture and Food, Perth, WA 6150, Australia
  • Abstract:A comparative proteomic analysis was made of salt response in seedling roots of wheat cultivars Jing-411 (salt tolerant) and Chinese Spring (salt sensitive) subjected to a range of salt stress concentrations (0.5%, 1.5% and 2.5%) for 2 days. One hundred and ninety eight differentially expressed protein spots (DEPs) were located with at least two-fold differences in abundance on 2-DE maps, of which 144 were identified by MALDI-TOF-TOF MS. These proteins were involved primarily in carbon metabolism (31.9%), detoxification and defense (12.5%), chaperones (5.6%) and signal transduction (4.9%). Comparative analysis showed that 41 DEPs were salt responsive with significant expression changes in both varieties under salt stress, and 99 (52 in Jing-411 and 47 in Chinese Spring) were variety specific. Only 15 and 9 DEPs in Jing-411 and Chinese Spring, respectively, were up-regulated in abundance under all three salt concentrations. All dynamics of the DEPs were analyzed across all treatments. Some salt responsive DEPs, such as guanine nucleotide-binding protein subunit beta-like protein, RuBisCO large subunit-binding protein subunit alpha and pathogenesis related protein 10, were up-regulated significantly in Jing-411 under all salt concentrations, whereas they were down-regulated in salinity-stressed Chinese Spring.
    Keywords:DEPs, differentially expressed protein spots   CS, Chinese Spring   RWC, relative water content   RuBisCO, ribulose-1,5-bisphosphate carboxylase/oxygenase   SAM2, S-adenosylmethionine synthetase 2   PR10, pathogenesis related protein 10   TCTPs, translationally controlled tumor-associated proteins
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